Quantum dot mode-locked frequency comb with ultra-stable 25.5 GHz spacing between 20°C and 120°C

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Semiconductor mode-locked lasers (MLLs) are promising frequency comb sources for dense wavelength-division-multiplexing (DWDM) data communications. Practical data communication requires a frequency-stable comb source in a temperature-varying environment and a minimum tone spacing of 25 GHz to support high-speed DWDM transmissions. To the best of our knowledge, however, to date, there have been no demonstrations of comb sources that simultaneously offer a high repetition rate and stable mode spacing over an ultrawide temperature range. Here, we report a frequency comb source based on a quantum dot (QD) MLL that generates a frequency comb with stable mode spacing over an ultrabroad temperature range of 20–120°C. The two-section passively mode-locked InAs QD MLL comb source produces an ultra-stable fundamental repetition rate of 25.5 GHz (corresponding to a 25.5 GHz spacing between adjacent tones in the frequency domain) with a variation of 0.07 GHz in the tone spacing over the tested temperature range. By keeping the saturable absorber reversely biased at -2V, stable mode-locking over the whole temperature range can be achieved by tuning the current of the gain section only, providing easy control of the device. At an elevated temperature of 100°C, the device shows a 6 dB comb bandwidth of 4.81 nm and 31 tones with
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期刊论文Quantum dot mode-locked frequency comb with ultra-stable 25.5 GHz spacing between 20°C and 120°C发表于2020年8期PhotonicsResearch作者ShujiePan,JianouHuang,ZichuanZhou,ZhixinLiu,LalithaPonnampalam,ZizhuoLiu,MingchuTang,Mu-ChiehLo,ZizhengCao,KenichiNishi,KeizoTakemasa,MitsuruSugawara,RichardPenty,IanWhite,AlwynSeeds,HuiyunLiu,SimingC,本篇论文的所有权归原作者ShujiePan,JianouHuang,ZichuanZhou,ZhixinLiu,LalithaPonnampalam,ZizhuoLiu,MingchuTang,Mu-ChiehLo,ZizhengCao,KenichiNishi,KeizoTakemasa,MitsuruSugawara,RichardPenty,IanWhite,AlwynSeeds,HuiyunLiu,SimingC所有,如果您对本文有版权争议,可与客服联系进行内容授权或下架。